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Nanotechnology|January 18, 2014
Solution-processed Cu2ZnSnS4 superstrate solar cell using vertically aligned ZnO nanorodsDongwook Lee, Kijung YongACS Applied Materials & Interfaces|November 21, 2012
Superstrate CuInS2 photovoltaics with enhanced performance using a CdS/ZnO nanorod arrayDongwook Lee, Kijung YongChemical Communications (Cambridge, England)|September 26, 2008
Type-II CdS nanoparticle-ZnO nanowire heterostructure arrays fabricated by a solution process: enhanced photocatalytic activityYoungjo Tak, Hyeyoung Kim, Dongwook Lee, et al.Chemical Communications (Cambridge, England)|January 15, 2011
Fabrication of CuO-ZnO nanowires on a stainless steel mesh for highly efficient photocatalytic applicationsSungmook Jung, Kijung YongPhysical Chemistry Chemical Physics : PCCP|January 5, 2013
A highly efficient light capturing 2D (nanosheet)-1D (nanorod) combined hierarchical ZnO nanostructure for efficient quantum dot sensitized solar cellsHeejin Kim, Kijung YongACS Applied Materials & Interfaces|November 27, 2013
Highly efficient photoelectrochemical hydrogen generation using a quantum dot coupled hierarchical ZnO nanowires arrayHeejin Kim, Kijung YongACS Applied Materials & Interfaces|January 27, 2016
Novel CdS Hole-Blocking Layer for Photostable Perovskite Solar CellsInsung Hwang, Kijung YongNanotechnology|July 7, 2011
Growth and characterization of stoichiometric tungsten oxide nanorods by thermal evaporation and subsequent annealingKaruppanan Senthil, Kijung YongNanotechnology|April 28, 2012
Highly efficient visible light photocatalysis of novel CuS/ZnO heterostructure nanowire arraysMikyung Lee, Kijung YongChemphyschem : a European Journal of Chemical Physics and Physical Chemistry|December 13, 2012
Environmentally benign and efficient Ag2S-ZnO nanowires as photoanodes for solar cells: comparison with CdS-ZnO nanowiresInsung Hwang, Kijung YongPageof 19